Microbial biomass carbon and enzymes-degraders of carbohydrates in polar soils from the area of Livingston Island, Antarctica

IF 1.4 Q4 SOIL SCIENCE Soil Science Annual Pub Date : 2022-10-25 DOI:10.37501/soilsa/156042
B. Malcheva, M. Nustorova, M. Zhiyanski, R. Yaneva, E. Abakumov
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Abstract

Polar soils under different vegetation cover from Livingston Island (Antarctica) were studied ana-lyzing indicators of carbohydrates decomposition in soils: organic carbon, biomass carbon, total nitrogen, C:N ratio, cellulase, amylase, and invertase activity. The highest values of microbial biomass in soils were indicated for sites with vegetation cover while the lowest values in soils without vegetation, which correlate with the content of total organic carbon and the C:N ratio. The highest percentage of biomass carbon compared to the total organic biomass carbon is obtained for two sites with mosses, and the lowest in sites without vegetation, followed by the sites with lichens. Cellulase activity is highest in polar soils with moss cover. Amylase activity depends more strongly on the type of vegetation. The highest amylase activity is detected in soils under algae cover and the lowest in soils without vegetation. Invertase activity is limited by the extreme soil and climatic conditions of Antarctica. A very strong, positive correlation is found between total carbon and total nitrogen. The relationship between total carbon and the C:N ratio, as well as between biomass carbon and amylase activity, is moderate, and positive. The higher dependence of amylase activity from organic carbon with microbial origin correlates with higher values of the enzyme amylase compared to the enzyme cellulase. There is a strong (cellulase) and very strong (amylase) positive relationship between the activity of enzymes and the combination of factors: total carbon, total nitrogen, C: N ratio and biomass carbon.
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南极利文斯顿岛极地土壤中微生物生物量碳和碳水化合物的酶降解物
以南极利文斯顿岛不同植被覆盖条件下的极地土壤为研究对象,分析了土壤碳水化合物分解指标:有机碳、生物量碳、全氮、碳氮比、纤维素酶、淀粉酶和转化酶活性。有植被覆盖的土壤微生物生物量最高,无植被覆盖的土壤微生物生物量最低,这与土壤总有机碳含量和碳氮比有关。生物量碳占总有机生物量碳的比例最高的是两个有苔藓的样地,最低的是没有植被的样地,其次是有地衣的样地。纤维素酶活性在有苔藓覆盖的极地土壤中最高。淀粉酶的活性很大程度上取决于植被类型。藻类覆盖土壤淀粉酶活性最高,无植被土壤淀粉酶活性最低。转化酶的活性受到南极洲极端土壤和气候条件的限制。总碳和总氮之间有很强的正相关关系。总碳与碳氮比、生物量碳与淀粉酶活性呈中等正相关。与纤维素酶相比,淀粉酶活性对微生物来源的有机碳的依赖性更高,这与淀粉酶活性的值更高有关。酶的活性与总碳、总氮、碳氮比和生物量碳的组合呈强正相关(纤维素酶)和极强正相关(淀粉酶)。
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来源期刊
Soil Science Annual
Soil Science Annual SOIL SCIENCE-
CiteScore
2.50
自引率
6.70%
发文量
0
审稿时长
29 weeks
期刊介绍: Soil Science Annual journal is a continuation of the “Roczniki Gleboznawcze” – the journal of the Polish Society of Soil Science first published in 1950. Soil Science Annual is a quarterly devoted to a broad spectrum of issues relating to the soil environment. From 2012, the journal is published in the open access system by the Sciendo (De Gruyter).
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